Live data from Hacker News

Olympus quits camera business after 84 years

bbc.com

381–384 of 384 posts

Re: Olympus quits camera business after 84 years

#381
post #368

Earlier quoted context omitted.

Not disagreeing, but just to counter your point a bit, the Sony A9 has zero cross type sensors, but it has the best on-sensor PDAF system currently on the market. Conceptually, I totally agree with you that cross type sensors are BETTER than non cross type sensors, and dual cross-type are even BETTER, but its rarely as simple as that in the real world.

"Best on-sensor PDAF system currently on the market" is a non-scientific statement, but I'll certainly agree with you that it's great. However, in less optimal situations (e.g. low light, low contrast, and contrast perpendicular to the detection direction), it's my personal experience that current non-cross-type PDAF solutions fail, requiring 90 degree rotation to focus, which wouldn't be needed for cross-type. That,…

Cross-type has nothing to do with low light or low contrast. Sorry, I don't understand what point you want to make. There are dozens of things that affect focusing, or to be more specific - focusing speed, focusing accuracy, focusing repeatibility, etc. Many of these factors are tied to the lens. For e.g. Outer focusing points on a poorly made "consumer" lenses, generally, are not very accurate when you're close to MFD, and the focusing system tends to hunt a lot. STM focus motors are not designed for focusing speed, but they are designed for repeatibility. Also, most low light focusing and low-contrast focusing is hampered because of the high read-noise from the line sensors. I have the A9II and it has the best focusing system I've ever used. I thought the 1DX II was accurate, but this blows it away. Haven't tried the 1DXIII though.

Re: Olympus quits camera business after 84 years

#382

Earlier quoted context omitted.

The bar for broad market consumer products--which digital cameras once were--has a much higher bar than that. "Good enough" would be that you take a picture on your camera, and it's available as a thumbnail in your phone's gallery without any further action. Sharing it would trigger a full transfer. "Great" would be being able to edit and upload without taking your phone out of your pocket at all. It blows my mind th…

I for one want my camera to be able to take pictures, and that's it. I don't want it to be a cloud aware 5g connected behemoth running a desktop tier operating system and lightroom.

That's fine. But it's a shrinking market.

Re: Olympus quits camera business after 84 years

#383
post #381

Earlier quoted context omitted.

"Best on-sensor PDAF system currently on the market" is a non-scientific statement, but I'll certainly agree with you that it's great. However, in less optimal situations (e.g. low light, low contrast, and contrast perpendicular to the detection direction), it's my personal experience that current non-cross-type PDAF solutions fail, requiring 90 degree rotation to focus, which wouldn't be needed for cross-type. That,…

Cross-type has nothing to do with low light or low contrast. Sorry, I don't understand what point you want to make. There are dozens of things that affect focusing, or to be more specific - focusing speed, focusing accuracy, focusing repeatibility, etc. Many of these factors are tied to the lens. For e.g. Outer focusing points on a poorly made "consumer" lenses, generally, are not very accurate when you're close to M…

> Cross-type has nothing to do with low light or low contrast.

Of course it does. PDAF needs to observe a feature (a phase difference) in the image, which requires light and contrast.

In strong light, there are usually plenty of features available, making PDAF seem borderline magic, especially for something like DPAF where almost every single pixel can be used as a focus point.

In lower light and contrast, fewer features are available. Subjects are rarely perfectly symmetric, so there are different features are available across the different sensor axis (e.g. a striped shirt).

As subjects are not symmetric, the chances of you running out of features to focus on due to reduced contrast along two axis is much lower than running out along just one. Cross-type allow both axis to be used simultaneously, while non-cross can only use one.

This means that, with the same sensitivity, cross-type is much more likely to be able to detect a feature in an area than non-cross, as there are more features available to it. As features turn to noise and AF becomes difficult, this leads to increased focus ability at lower light.

For non-cross, a 90 degree rotation of the camera is needed to reveal those features.

> For e.g. Outer focusing points on a poorly made "consumer" lenses, generally, are not very accurate when you're close to MFD, and the focusing system tends to hunt a lot.

I see what you're trying to say ("inner focus point is not just cross-type, it's also the sharpest point on the lens"), but that's not really relevant here. I'm making the observation on a camera without cross-type at all, dead-center or thereabout.

One can also use the zebra MF assist feature to highlight this, at least for DPAF cameras.

> I have the A9II and it has the best focusing system I've ever used. I thought the 1DX II was accurate, but this blows it away. Haven't tried the 1DXIII though.

This is the beauty of on-sensor focus - you measure exactly what you see, instead of measuring something else entirely and hoping that the calibration data is good enough...

Re: Olympus quits camera business after 84 years

#384
post #381

Earlier quoted context omitted.

Cross-type has nothing to do with low light or low contrast. Sorry, I don't understand what point you want to make. There are dozens of things that affect focusing, or to be more specific - focusing speed, focusing accuracy, focusing repeatibility, etc. Many of these factors are tied to the lens. For e.g. Outer focusing points on a poorly made "consumer" lenses, generally, are not very accurate when you're close to M…

> Cross-type has nothing to do with low light or low contrast. Of course it does. PDAF needs to observe a feature (a phase difference) in the image, which requires light and contrast. In strong light, there are usually plenty of features available, making PDAF seem borderline magic, especially for something like DPAF where almost every single pixel can be used as a focus point. In lower light and contrast, fewer feat…

Sorry, I don't agree with you and there is no point going around in circles. You're arguing "in theory", I'm arguing "in practice". Anyway, good luck.
Post reply on HN